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Showing 1 to 15 of 19 results Save | Export
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Duroisin, Natacha; Demeuse, Marc – Cogent Education, 2015
One possible way of evaluating set curricula is to examine the consistency of study programmes with students' psycho-cognitive development. Three theories were used to evaluate matching between developmental theories and content proposed in the mathematics programmes (geometry section) for primary and the beginning of secondary education. These…
Descriptors: Cognitive Development, French, Geometry, Mathematics Instruction
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Robotti, Elisabetta – Educational Studies in Mathematics, 2012
In the field of human cognition, language plays a special role that is connected directly to thinking and mental development (e.g., Vygotsky, "1938"). Thanks to "verbal thought", language allows humans to go beyond the limits of immediately perceived information, to form concepts and solve complex problems (Luria, "1975"). So, it appears language…
Descriptors: Cognitive Processes, Plane Geometry, Researchers, Natural Language Processing
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Spikell, Mark A. – Mathematics Teacher, 1990
Presented is an informal technique for counting the number of different-sized equilateral triangles on an isometric grid. Five activities that relate to this topic are included. (KR)
Descriptors: Cognitive Development, Geometric Concepts, Geometric Constructions, Geometry
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Avital, Shmuel; Barbeau, Edward J. – For the Learning of Mathematics, 1991
Presents 13 examples in which the intuitive approach to solve the problem is often misleading. Presents analysis of these problems for five different sources of misleading intuitive generators: lack of analysis, unbalanced perception, improper analogy, improper generalization, and misuse of symmetry. (MDH)
Descriptors: Cognitive Development, Cognitive Processes, Generalization, Geometric Concepts
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Sharp, Janet M.; Hoiberg, Karen Bush – Teaching Children Mathematics, 2001
Analyzes one student's thinking using the Van Hiele levels of geometric thinking. (KHR)
Descriptors: Cognitive Development, Elementary Education, Evaluation, Geometry
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Clements, Douglas H.; Sarama, Julie – Teaching Children Mathematics, 2000
Describes young children's thinking about geometric shapes and discusses implications for teaching and learning. (KHR)
Descriptors: Cognitive Development, Concept Formation, Curriculum Development, Early Childhood Education
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Teppo, Anne – Mathematics Teacher, 1991
Compared are the van Hiele levels of geometric thinking and the geometry curriculum recommended by the National Council of Teachers of Mathematics Curriculum and Evaluation Standards for School Mathematics. Activities which illustrate the various levels are provided by grade level with procedures. (CW)
Descriptors: Cognitive Development, Cognitive Structures, Geometry, High Schools
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Clements, Douglas H.; Battista, Michael T. – Journal for Research in Mathematics Education, 1990
Presented is a study which focused on using turtle graphics programing for geometric problem solving. The goal was to investigate changes in children's mathematical knowledge and results indicate that the LOGO environment enriched children's geometric conceptualizations and sophistication of their geometric thinking. (KR)
Descriptors: Cognitive Development, Computer Assisted Instruction, Computer Uses in Education, Elementary Education
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Shumway, Richard – For the Learning of Mathematics, 1990
Discussed are supercalculator capabilities and possible teaching implications. Included are six examples that use a supercalculator for topics that include volume, graphing, algebra, polynomials, matrices, and elementary calculus. A short review of the research on supercomputers in education and the impact they could have on the curriculum is…
Descriptors: Algebra, Calculators, Calculus, Cognitive Development
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Zvonkin, Alexander – Journal of Mathematical Behavior, 1992
Discusses the first session and events from other sessions of a mathematics circle consisting of the author and four preschool children. Presents discussions that ensued with the children when asked to solve problems related to Piaget's stages of cognitive development. (MDH)
Descriptors: Arithmetic, Cognitive Development, Cognitive Processes, Developmental Stages
Wilson, Patricia S. – Focus on Learning Problems in Mathematics, 1990
Described are inconsistencies, definitions, and examples and their complex relationship which can be used to interpret students' reactions to the geometric tasks used to investigate inconsistencies in student thinking. Discusses the nature of definitions, the value of precise vocabulary, the use and limitations of prototypes, and the power of…
Descriptors: Abstract Reasoning, Cognitive Development, Cognitive Dissonance, Cognitive Structures
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Levy, Benjamin N. – Mathematics Teacher, 1990
Discussed is the use of a program called MathCAD which allows students to solve higher order polynomial equations and geometry problems. The use of cooperative learning is emphasized. Included are graphs and part of a printout generated while solving problems with MathCAD. (KR)
Descriptors: Algebra, Calculus, Cognitive Development, Computer Software
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Spence, Lawrence E. – Mathematics Teacher, 1990
Applications of generalizations of both arithmetic and geometric progressions are presented. The first-order difference equation is used in solving seven examples from finance, business, and medicine. Detailed directions are included for each example. (KR)
Descriptors: Cognitive Development, Computation, Geometry, Mathematical Applications
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Davey, Geoff; Holliday, Jack – Australian Mathematics Teacher, 1992
Describes five skills underpinning the understanding of geometry for primary and lower secondary mathematics students. Skill categories identified include (1) visual; (2) verbal; (3) drawing; (4) logical; and (5) application. Gives examples of skills appropriate for Van Hiele levels 1-3. (MDH)
Descriptors: Cognitive Development, Developmental Stages, Drafting, Elementary Secondary Education
Tharp, Marcia L.; Uprichard, A. Edward – 1992
Recent calls for mathematics instruction reform recommend that a problem-solving inquiry-oriented (PSIO) classroom environment be established. Students, however, may view mathematics as a static, ruled-based discipline that runs counter to the PSIO approach. A study examined the student/teacher interactions as seen from the viewpoint of five…
Descriptors: Attitude Change, Attitude Measures, Case Studies, Cognitive Development
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